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Enhanced expression of proteins involved in energy production and transfer in breast muscle of pedigree male broilers exhibiting high feed efficiency

机译:表现出高饲料效率的纯种雄性肉鸡胸肌中参与能量产生和转移的蛋白质的增强表达

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摘要

In cells with fluctuating energy demand (e.g., skeletal muscle), a transfer system of proteins across the inner and outer mitochondrial membranes links mitochondrial oxidative phosphorylation to cytosolic phosphorylated creatine (PCr) that serves as a phosphate reservoir for rapid repletion of cytosolic adenosine triphosphate (ATP). Crucial proteins of this energy transfer system include several creatine kinase (CK) isoforms found in the cytosol and mitochondria. In a recent proteomic study (Kong et al., ), several components of this system were up-regulated in high feed efficiency (FE) compared to low FE breast muscle; notably adenine nucleotide translocase (ANT), voltage dependent activated channel (VDAC), the brain isoform of creatine kinase (CK-B), and several proteins of the electron transport chain. Reexamination of the original proteomic dataset revealed that the expression of two mitochondrial CK isoforms (CKMT1A and CKMT2) had been detected but were not recognized by the bioinformatics program used by Kong et al. (). The CKMT1A isoform was up-regulated (7.8-fold, P = 0.05) in the high FE phenotype but there was no difference in CKMT2 expression (1.1-fold, P = 0.59). From these findings, we hypothesize that enhanced expression of the energy production and transfer system in breast muscle of the high FE pedigree broiler male could be fundamentally important in the phenotypic expression of feed efficiency.
机译:在能量需求波动的细胞(例如骨骼肌)中,跨内,线粒体膜的蛋白质转移系统将线粒体的氧化磷酸化作用与胞质磷酸化肌酸(PCr)连接起来,后者充当了磷酸盐储存池,可快速补充胞质三磷酸腺苷( ATP)。该能量转移系统的关键蛋白包括在细胞质和线粒体中发现的几种肌酸激酶(CK)同工型。在最近的蛋白质组学研究中(Kong等人),与低FE乳腺肌肉相比,该系统的几个组成部分在高饲料效率(FE)中被上调;尤其是腺嘌呤核苷酸转运酶(ANT),电压依赖性激活通道(VDAC),肌酸激酶的脑亚型(CK-B)和电子传输链的几种蛋白质。对原始蛋白质组学数据集的重新检查显示,已经检测到两种线粒体CK同工型(CKMT1A和CKMT2)的表达,但Kong等人使用的生物信息学程序无法识别它们。 ()。在高FE表型中,CKMT1A同工型上调(7.8倍,P = 0.05),但CKMT2表达无差异(1.1倍,P = 0.59)。根据这些发现,我们假设高FE家谱肉鸡雄性胸肉中增强的能量产生和传递系统表达可能对饲料效率的表型表达至关重要。

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